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    <title>AN OPERATING PERFORMANCE STUDY TO ADAPT RETScreen METHODOLOGY TO TREATED WASTEWATER SOURCE HEAT PUMP SYSTEM</title>
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    <namePart>Xu, Limeimei</namePart>
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    <namePart>Anderson, Paul R.</namePart>
    <affiliation authority="wikidata" authorityURI="https://www.wikidata.org" valueURI="https://www.wikidata.org/wiki/Q131720503">CAEE / Civil, Architectural, and Environmental Engineering</affiliation>
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  <abstract>A ground source heat pump system (GSHP) is a heating and air-conditioning system where a ground source is used as a heat source and sink. Potential ground sources include groundwater, surface water, and ground. A GSHP has several advantages over other heat pump systems, such as an air-source heat pump, because it has higher heating and cooling efficiency, more energy savings, and lower CO2 emissions. A treated wastewater source heat pump (TWSHP) system is similar to a GSHP system, but the TWSHP system relies on a treated wastewater source, which means that the source temperature is variable. A TWSHP is more convenient and offers greater cost savings; the TWSHP system avoids the costs associated with pumping, grouting, and drilling because the treated wastewater is already available at the surface. RETScreen is a software product that provides a methodology to study the feasibility of installing a constant-temperature source GSHP system. Advantages of using RETScreen include it is tested, valuable, readily available, and free. If design of a variable-temperature source TWSHP system can take advantage of RETSceen methodology, it would bring a tremendous help for TWSHP applications. This paper presents a case study to test whether a TWSHP system can take advantage of RETSceen methodology. The approach involves an assessment of TWSHP system operating performance under variable source temperatures. Results show that a TWSHP system can take advantage of RETSceen methodology for a variable source temperatures span over a certain range. In this study the heating temperature ranged from 9 to 16 ℃ and the cooling temperature ranged from 11 to 22℃. Keywords: treated wastewater source heat pump; RETScreen methodology</abstract>
  <note type="provenance">Submitted by Liana Khananashvili (khananashvili@iit.edu) on 2013-11-25T21:56:08Z No. of bitstreams: 2 Final MS Thesis (Limeimei Xu).pdf: 1844337 bytes, checksum: a03f120c538a6893a7936201cfae4b90 (MD5) signed title page(Limeimei Xu).pdf: 551795 bytes, checksum: 9f2d27b2b3acc94033dcdb67658181e8 (MD5)</note>
  <note type="provenance">Made available in DSpace on 2013-11-25T21:56:08Z (GMT). No. of bitstreams: 2 Final MS Thesis (Limeimei Xu).pdf: 1844337 bytes, checksum: a03f120c538a6893a7936201cfae4b90 (MD5) signed title page(Limeimei Xu).pdf: 551795 bytes, checksum: 9f2d27b2b3acc94033dcdb67658181e8 (MD5) Previous issue date: 2013-07</note>
  <note type="thesis">M.S. in Environmental Engineering, July 2013</note>
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    <dateCaptured>2013</dateCaptured>
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    <dateCreated keyDate="yes">2013-07</dateCreated>
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  <identifier type="hdl">http://hdl.handle.net/10560/3163</identifier>
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    <namePart>CAEE / Civil, Architectural, and Environmental Engineering</namePart>
    <affiliation>Illinois Institute of Technology</affiliation>
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